At ambient conditions, the light alkali metals are free-electron-like crystals with a highly symmetric structure. However, they were found recently to exhibit unexpected complexity under pressure 1-6. It was predicted from theory 1.2 - and later confirmed by experiment 3-5 - that lithium and sodium undergo a sequence of symmetry-breaking transitions, driven by a Peierls mechanism, at high pressures. Measurements of the sodium melting curve 6 have subsequently revealed an unprecedented (and still unexplained) pressure-induced drop in melting temperature from 1,000 K at 30 GPa down to room temperature at 120 GPa. Here we report results from ab initio calculations that explain the unusual melting behaviour in dense sodium. We show that molten ...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Perturbative variational calculations of thermodynamic and structural properties of liquid metals, b...
A series of electronic and structural transitions are predicted in molten lithium from first princip...
At ambient conditions, the light alkali metals are free-electron like crystals with a highly symmetr...
X-ray diffraction experiments have shown that sodium exhibits a dramatic pressure-induced drop in me...
Alkali metals exhibit unexpected structures and electronic behavior at high pressures. Compression o...
The alkali elements at ambient conditions are well described by the nearly-free electron (NFE) mode...
Density-driven phase transformations are a known phenomenon in liquids. Pressure-driven transitions ...
Abstract. We report the effects of system size on melting of dense sodium at about 100 GPa. We have ...
We report the effects of system size on melting of dense sodium at about 100 GPa. We have performed s...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
We have studied the structure of liquid metals at high temperatures and high pressures, i.e., fluid ...
Producción CientíficaThe meltinglike transition of Na30 is studied by orbital-free density-functiona...
Metallic lithium and sodium are actively investigated as anodes for all solid-state batteries. While...
The electronic, dynamical and elastic properties of body-centered cubic (bcc) alkali metals (Li, Na,...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Perturbative variational calculations of thermodynamic and structural properties of liquid metals, b...
A series of electronic and structural transitions are predicted in molten lithium from first princip...
At ambient conditions, the light alkali metals are free-electron like crystals with a highly symmetr...
X-ray diffraction experiments have shown that sodium exhibits a dramatic pressure-induced drop in me...
Alkali metals exhibit unexpected structures and electronic behavior at high pressures. Compression o...
The alkali elements at ambient conditions are well described by the nearly-free electron (NFE) mode...
Density-driven phase transformations are a known phenomenon in liquids. Pressure-driven transitions ...
Abstract. We report the effects of system size on melting of dense sodium at about 100 GPa. We have ...
We report the effects of system size on melting of dense sodium at about 100 GPa. We have performed s...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
We have studied the structure of liquid metals at high temperatures and high pressures, i.e., fluid ...
Producción CientíficaThe meltinglike transition of Na30 is studied by orbital-free density-functiona...
Metallic lithium and sodium are actively investigated as anodes for all solid-state batteries. While...
The electronic, dynamical and elastic properties of body-centered cubic (bcc) alkali metals (Li, Na,...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Perturbative variational calculations of thermodynamic and structural properties of liquid metals, b...
A series of electronic and structural transitions are predicted in molten lithium from first princip...